Compound (3) sodium nitrate contains both ionic and covalent bonds.
Compound (3) sodium nitrate contains both ionic and covalent bonds. Sodium nitrate consists of the ions Na+ and NO3-, where the bond between Na+ and NO3- is predominantly ionic, and the bond within the NO3- ion is covalent. The sodium ion (Na+) donates an electron to the nitrate ion (NO3-), resulting in an ionic bond. However, within the nitrate ion, the nitrogen (N) and oxygen (O) atoms share electrons, forming covalent bonds.
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(1) copper (II) chloride
(2) aluminum acetate
(3) iron (III) hydroxide
(4) potassium sulfate
Iron (III) hydroxide is the least soluble compound as it has the lowest Ksp value.
The solubility is the amount of solute that can dissolve in a given volume of solvent at a particular temperature.
The solubility of substances can be compared using their their solubility products constant (Ksp) values.
Iron (III) hydroxide has the lowest Ksp value.
Therefore, Iron (III) hydroxide is the least soluble compound.
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Answer:3
Explanation:
stated
Answer : The mass represented in scientific notation as and the mass in milligram is, 5 mg
Explanation :
Scientific notation : It is the representation of expressing the numbers that are too big or too small and are represented in the decimal form with one digit before the decimal point times 10 raise to the power.
For example :
5000 is written as
889.9 is written as
In this examples, 5000 and 889.9 are written in the standard notation and and are written in the scientific notation.
If the decimal is shifting to right side, the power of 10 is negative and if the decimal is shifting to left side, the power of 10 is positive.
As we are given the 0.005 g in standard notation.
Now converting this into scientific notation, we get:
As, the decimal point is shifting to right side, thus the power of 10 is negative.
Thus, the mass represented in scientific notation as
Now we have to determine the mass in milligram.
The conversion used from gram to kilogram is:
1 gram = 1000 milligram
or,
1 g = 1000 mg
As we are given the mass 0.005 grams.
As, 1 gram mass = 1000 mg
So, 0.005 gram mass =
The mass in milligram is, 5 mg
Scientific notation represents the precise way scientists handle exceptionally abundant digits or extremely inadequate numbers in the product of a decimal form of number and powers of ten.
Put differently, such numbers can be rewritten as a simple number multiplied by 10 raised to a certain exponent or power. It is a system for expressing extremely broad or exceedingly narrow digits compactly.
Scientific notation should be in the form of
where
The number "a" is called "mantissa" and the exponent "n" the order of magnitude.
The exponent tells about the size of the number.
From the key questions asked, we face the standard form of 0.005 grams which will be converted into scientific notation.
Hence, 0.005 grams is written in scientific notation as
Because 1 milligrams is equal to 10⁻³ grams, then
Hence, 0,005 grams is 5.0 milligrams.
In science, we frequently must deal with extremely small or incredibly large quantities. For a typical example, one of the recognized limitations of the microwave frequency is 300,000,000 Hz with a photon energy of 0.00000124 eV. They with many zeros can be impractical to work with, so scientists properly implement scientific notation.
The inverse of scientific notation is the standard form. To promptly change scientific notation into standard form, we reverse the process, move the decimal point to the right or left. This expanded form is called the standard form.
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The is Answer is air
= 1.86 °C/m.
Answer : The maximum mass of sucralose is, 7952.8 grams.
Explanation : Given,
Molal-freezing-point-depression constant for water =
Mass of water (solvent) = 2.00 kg
Molar mass of sucralose = 397.64 g/mole
Formula used :
where,
= change in freezing point
= freezing point of solution =
= freezing point of water =
i = Van't Hoff factor = 1 (for sucralose non-electrolyte)
= freezing point constant for water =
m = molality
Now put all the given values in this formula, we get
Therefore, the maximum mass of sucralose is, 7952.8 grams.
B. The greater the dipole moment, the stronger the dipole-dipole forces.
C. The polarizability of elongated molecules is greater than that of compact, more spherical molecules.
D. London dispersion forces weaken in the order Xe < Kr < Ar
E. Hydrogen bonding leads to the strongest intermolecular forces.
Answer:
D. London dispersion forces weaken in the order Xe < Kr < Ar is an incorrect order, the correct order of London dispersion forces weaken in the order Ar < Kr < Xe.
Explanation:
A. Dispersion forces are present in all molecular substances.
is a correct statement London dispersion forces are weak intermolecular forces found in all molecular substances.
B. Clearly, greater the dipole moment, greater will be dipole-dipole forces. Hence true.
C) The polarizability of elongated molecules is greater than that of compact, more spherical molecules. The more elongated the molecule is more will be its ability to get polarized.
D. London dispersion forces weaken in the order Xe < Kr < Ar is an incorrect order, the correct order of London dispersion forces weaken in the order Ar< Kr < Xe.
E) Hydrogen bonding leads to the strongest intermolecular forces is also a correct statement. Hydrogen bonding leads to increase in boiling point.